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Shadow Theory of Diffraction Grating

机译:衍射光栅阴影理论

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This paper deals with a new formulation for the diffraction of a plane wave by a periodic grating. As a simple example, the diffraction of a transverse magnetic wave by a perfectly conductive periodic array of rectangular grooves is discussed. On the basis of a shadow hypothesis such that no diffraction takes place and only the reflection occurs with the reflection coefficient -1 at a low grazing limit of incident angle, this paper proposes the scattering factor as a new concept. In terms of the scattering factor, several new formulas on the diffraction amplitude, the diffraction efficiency and the optical theorem are obtained. It is newly found that the scattering factor is an even function due to the reciprocity. The diffraction efficiency is defined for a propagating incident wave as well as an evanescent incident wave. Then, it is theoretically found that the Oth order diffraction efficiency becomes unity and any other order diffraction efficiencies vanish when a real angle of incidence becomes low grazing. Numerical examples of the scattering factor and diffraction efficiency are illustrated in figures.
机译:本文提出了一种利用周期性光栅衍射平面波的新方法。作为一个简单的例子,讨论了矩形凹槽的完美导电周期阵列对横向电磁波的衍射。在阴影假设的基础上,在入射角较低的掠射极限下,不发生衍射,仅发生反射,反射系数为-1,因此提出了散射系数的新概念。在散射因子方面,获得了关于衍射振幅,衍射效率和光学定理的几个新公式。新发现,由于互易性,散射因子是一个偶函数。为传播的入射波以及an逝的入射波定义了衍射效率。然后,从理论上发现,当实际入射角变低时,O级衍射效率变为1,其他任何级的衍射效率均消失。图中显示了散射因子和衍射效率的数值示例。

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